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Tailoring the aluminum nanocrystal surface oxide for all-aluminum-based antenna-reactor plasmonic photocatalysts.


ABSTRACT: Aluminum nanocrystals (AlNCs) are of increasing interest as sustainable, earth-abundant nanoparticles for visible wavelength plasmonics and as versatile nanoantennas for energy-efficient plasmonic photocatalysis. Here, we show that annealing AlNCs under various gases and thermal conditions induces substantial, systematic changes in their surface oxide, modifying crystalline phase, surface morphology, density, and defect type and concentration. Tailoring the surface oxide properties enables AlNCs to function as all-aluminum-based antenna-reactor plasmonic photocatalysts, with the modified surface oxides providing varying reactivities and selectivities for several chemical reactions.

SUBMITTER: Bayles A 

PROVIDER: S-EPMC10945844 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Tailoring the aluminum nanocrystal surface oxide for all-aluminum-based antenna-reactor plasmonic photocatalysts.

Bayles Aaron A   Fabiano Catherine J CJ   Shi Chuqiao C   Yuan Lin L   Yuan Yigao Y   Craft Nolan N   Jacobson Christian R CR   Dhindsa Parmeet P   Ogundare Adebola A   Mendez Camacho Yelsin Y   Chen Banghao B   Robatjazi Hossein H   Han Yimo Y   Strouse Geoffrey F GF   Nordlander Peter P   Everitt Henry O HO   Halas Naomi J NJ  

Proceedings of the National Academy of Sciences of the United States of America 20240305 11


Aluminum nanocrystals (AlNCs) are of increasing interest as sustainable, earth-abundant nanoparticles for visible wavelength plasmonics and as versatile nanoantennas for energy-efficient plasmonic photocatalysis. Here, we show that annealing AlNCs under various gases and thermal conditions induces substantial, systematic changes in their surface oxide, modifying crystalline phase, surface morphology, density, and defect type and concentration. Tailoring the surface oxide properties enables AlNCs  ...[more]

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